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Environmental Supramolecular Physics: Climatic and Biophysical Effects

机译:环境超分子物理:气候和生物物理学

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The results of studies on channels of influence of major manifestations of solar-geomagnetic activity, such as solar flares and magnetic storms, on weather, the climate, and humans are presented. The accompanying energy fluxes are completely absorbed by the Earth's ionosphere, causing emissive radiation in the microwave (UHF, SHF, and EHF) range. It is shown that this microwave radiation can control the origination of optically thin cloudiness by creating a condensation-cluster haze in the troposphere. A similar approach is proposed for the mechanism of forming water associates in the human organism. Processes from atomic physics and the physics of atomic collisions are used, implying that the effect of cluster formation is determined by the fact that the orbital angular momentum of Rydberg electrons (participating in the neutralization of the associates' charge) grows in the microwave field. Quantitative estimations of the effects of clusterization during a global magnetic storm agree well with the available experiments.
机译:展示了太阳能燃烧活动的主要表现影响渠道的研究结果,如太阳能耀斑和磁场,气候,气候和人类。伴随的能量通量完全被地球电离层吸收,导致微波(UHF,SHF和EHF)范围中发射辐射。结果表明,这种微波辐射可以通过在对流层中产生凝结簇雾度来控制光学薄浑浊的起源。提出了一种类似的方法,用于在人体中形成​​水辅助体的机制。使用原子理物理学和原子碰撞物理学的过程,暗示簇形成的效果决定了rydberg电子的轨道角动量(参与员工的充电中和的中和)在微波场中生长。全球磁风暴期间聚类效应的定量估计与可用的实验一致。

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